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There's more to life than neurotransmission: the regulation of exocytosis by synaptotagmin VII

机译:生命比神经传递还重要:突触突触素VII对胞吐作用的调节

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Among the 16 known vertebrate synaptotagmins, only Syt I, IV and VII are also present in C. elegans and Drosophila, suggesting that these isoforms play especially important roles in vivo. Extensive evidence indicates that Syt I is a synaptic vesicle Ca(2+) sensor essential for rapid neurotransmitter release. It has been suggested that the ubiquitously expressed Syt VII also regulates synaptic vesicle exocytosis, despite its presence in several tissues in addition to the brain. Here, we discuss recent genetic and biochemical evidence that does not support this view. Syt VII null mutants do not have a neurological phenotype, and the protein is found on the membrane of lysosomes and some non-synaptic secretory granules, where it regulates Ca(2+)-triggered exocytosis and plasma membrane repair.
机译:在16种已知的脊椎动物突触结合素中,线虫和果蝇中也仅存在Syt I,IV和VII,表明这些同工型在体内起着特别重要的作用。大量证据表明,Syt I是快速神经递质释放必不可少的突触囊泡Ca(2+)传感器。已经有人提出,尽管存在于大脑中,但普遍存在的Syt VII也能调节突触小泡的胞吐作用。在这里,我们讨论了不支持这种观点的最新遗传和生化证据。 Syt VII空突变体没有神经系统的表型,该蛋白被发现在溶酶体和一些非突触分泌颗粒的膜上,在那里它调节Ca(2+)触发的胞吐作用和质膜修复。

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